Quantum Spaces are Modular
arXiv:1606.01829 · doi:10.1103/PhysRevD.94.104052
Abstract
At present, our notion of space is a classical concept. Taking the point of view that quantum theory is more fundamental than classical physics, and that space should be given a purely quantum definition, we revisit the notion of Euclidean space from the point of view of quantum mechanics. Since space appears in physics in the form of labels on relativistic fields or Schrodinger wave functionals, we propose to define Euclidean quantum space as a choice of polarization for the Heisenberg algebra of quantum theory. We show, following Mackey, that generically, such polarizations contain a fundamental length scale and that contrary to what is implied by the Schrodinger polarization, they possess topologically distinct spectra. These are the modular spaces. We show that they naturally come equipped with additional geometrical structures usually encountered in the context of string theory or generalized geometry. Moreover, we show how modular space reconciles the presence of a fundamental scale with translation and rotation invariance. We also discuss how the usual classical notion of space comes out as a form of thermodynamical limit of modular space while the Schrodinger space is a singular limit.
version to appear in Physical Review D
References in corpus (4)
Cited by in corpus (39)
- A sensitive search for wormholes
- A Quantum Space Behind Simple Quantum Mechanics
- A Unique Connection for Born Geometry
- On the Non-commutativity of Closed String Zero Modes
- A new wormhole solution in de Sitter space
- The Theory of Metaparticles
- Testing ER=EPR
- On de Sitter Spacetime and String Theory
- The minimal length: a cut-off in disguise?
- Minimal length effect on the broadening of free wave-packets and its physical implications
- Dark Energy and String Theory
- The Vacuum Energy Density and Gravitational Entropy
- Quantum Gravity Phenomenology in the Infrared
- Modified Dark Matter: Relating Dark Energy, Dark Matter and Baryonic Matter
- Optimal uncertainty relations in a modified Heisenberg algebra
- Triple Interference, Non-linear Talbot Effect and Gravitization of the Quantum
- Gravitizing the Quantum
- Born sigma model for branes in exceptional geometry
- String Theory, the Dark Sector and the Hierarchy Problem
- Dynamical nonlocality in quantum time via modular operators
- Quantum gravity phenomenology at the dawn of the multi-messenger era -- A review
- Magnetic Seed and Cosmology as Quantum Hall Effect
- Interference and Oscillation in Nambu Quantum Mechanics
- On Dark Energy and Quantum Gravity
- Deformed classical-quantum mechanics transition
- Unruh effect as a result of quantization of spacetime
- Modular polymer representations of the Weyl algebra
- On Stringy de Sitter Spacetimes
- On the Emergent "Quantum" Theory in Complex Adaptive Systems
- Entropy Bounds and Holographic Dark Energy: Conflicts and Consensus
- Anti-de Sitter Momentum Space in 3D and 4D Quantum Gravity
- String Theory Bounds on the Cosmological Constant, the Higgs mass, and the Quark and Lepton Masses
- Effects of underlying topology on quantum state discrimination
- Canonical field quantization in momentum space and quantum space-time
- Path Integral in Modular Space
- Non-commutative waves for gravitational anyons
- Constraining the deformed dispersion relation with the hydrogen atom 1S-2S transition
- Hidden Symmetries in Gravity : Black holes and other minisuperspaces
- Spontaneous decoherence as a result of randomness in the flow of time